A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been proposed. Compared to conventional FLIM software, the proposed algorithms are non-iterative offering direct calculation of lifetimes and therefore suitable for real-time applications. They can be applicable to single-channel or 2D multi-channel time-correlated single-photon counting (TCSPC) systems. The proposed methods have been tested on both synthesized and realistic FLIM data, and we have compared their performances with other recently proposed non-fitting bi-exponential techniques showing promising applications in future massive solid-state TCSPC imagers
We have successfully demonstrated video-rate CMOS single-photon avalanche diode (SPAD)-based cameras...
Fluorescence lifetime imaging (FLIM) is widely applied to obtain quantitative information from fluor...
This paper reports on our progress in developing two-photon fluorescence lifetime imaging microscopy...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
In this study, we describe a time-correlated single photon counting (TCSPC) technique for multi-wave...
Fluorescence lifetime imaging (FLIM) is a powerful microscopy technique for providing contrast of bi...
How to simulate the decay pattern is crucial during lifetime inversion while utilizing intensity ima...
Fluorescence lifetime imaging (FLIM) is a powerful microscopy technique for providing contrast of bi...
We have successfully demonstrated video-rate CMOS single-photon avalanche diode (SPAD)-based cameras...
We have successfully demonstrated video-rate CMOS single-photon avalanche diode (SPAD)-based cameras...
We have successfully demonstrated video-rate CMOS single-photon avalanche diode (SPAD)-based cameras...
Fluorescence lifetime imaging (FLIM) is widely applied to obtain quantitative information from fluor...
This paper reports on our progress in developing two-photon fluorescence lifetime imaging microscopy...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
A new hardware-friendly bi-exponential fluorescence lifetime imaging (FLIM) algorithm has been propo...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
A newly developed hardware-friendly non-iterative fluorescence lifetime imaging (FLIM) analysis meth...
In this study, we describe a time-correlated single photon counting (TCSPC) technique for multi-wave...
Fluorescence lifetime imaging (FLIM) is a powerful microscopy technique for providing contrast of bi...
How to simulate the decay pattern is crucial during lifetime inversion while utilizing intensity ima...
Fluorescence lifetime imaging (FLIM) is a powerful microscopy technique for providing contrast of bi...
We have successfully demonstrated video-rate CMOS single-photon avalanche diode (SPAD)-based cameras...
We have successfully demonstrated video-rate CMOS single-photon avalanche diode (SPAD)-based cameras...
We have successfully demonstrated video-rate CMOS single-photon avalanche diode (SPAD)-based cameras...
Fluorescence lifetime imaging (FLIM) is widely applied to obtain quantitative information from fluor...
This paper reports on our progress in developing two-photon fluorescence lifetime imaging microscopy...